猪滤泡颗粒细胞分裂调控基因的表达。

IF 2.8 4区 生物学 Q3 CELL BIOLOGY Cell Division Pub Date : 2023-08-07 DOI:10.1186/s13008-023-00094-7
Jakub Kulus, Wiesława Kranc, Magdalena Kulus, Piotr Dzięgiel, Dorota Bukowska, Paul Mozdziak, Bartosz Kempisty, Paweł Antosik
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引用次数: 0

摘要

背景:细胞周期调节影响颗粒细胞的增殖,影响卵巢卵泡生长和排卵的许多相关过程。细胞周期的异常调节可导致卵巢内的许多疾病。本研究的目的是描述颗粒细胞内与细胞骨架形成、细胞器组织和细胞分裂调控有关的基因的表达谱。猪卵泡颗粒细胞的体外原代培养分别维持48、96和144小时,并通过芯片表达分析进行评价。结果:分析的基因被划分为“肌动蛋白细胞骨架组织”、“肌动蛋白丝组织”、“肌动蛋白丝基过程”、“细胞-基质黏附”、“细胞-底物黏附”、“染色体分离”、“染色体分离”、“细胞骨架组织”、“DNA完整性检查点”、“DNA复制起始”、“细胞器分裂”、“细胞器组织”12个基因本体组。在表达显著改变的基因中,选择那些在卵巢过程中起作用的基因作为考虑因素。表达增加的基因包括(ITGA11、CNN1、CCl2、TPM2、ACTN1、VCAM-1、COL3A1、GSN、FRMD6、PLK2)。表达降低的基因包括(KIF14、TACC3、ESPL1、CDC45、TTK、CDC20、CDK1、FBXO5、NEK2-NIMA、CCNE2)。对微阵列表达得到的结果进行RT-qPCR定量验证。结论:研究结果揭示了该基因的表达谱,可作为细胞信号转导、细胞结构组织等细胞过程的新分子标记。所选基因的表达谱为猪滤泡颗粒细胞原代体外培养过程中生理过程的调控提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Expression of genes regulating cell division in porcine follicular granulosa cells.

Background: Cell cycle regulation influences the proliferation of granulosa cells and affects many processes related to ovarian folliclular growth and ovulation. Abnormal regulation of the cell cycle can lead to many diseases within the ovary. The aim of this study was to describe the expression profile of genes within granulosa cells, which are related to the formation of the cytoskeleton, organization of cell organelles inside the cell, and regulation of cell division. Established in vitro primary cultures from porcine ovarian follicle granulosa cells were maintained for 48, 96, 144 h and evaluated via microarray expression analysis.

Results: Analyzed genes were assigned to 12 gene ontology groups "actin cytoskeleton organization", "actin filament organization", "actin filament-based process", "cell-matrix adhesion", "cell-substrate adhesion", "chromosome segregation", "chromosome separation", "cytoskeleton organization", "DNA integrity checkpoint", "DNA replication initiation", "organelle fision", "organelle organization". Among the genes with significantly changed expression, those whose role in processes within the ovary are selected for consideration. Genes with increased expression include (ITGA11, CNN1, CCl2, TPM2, ACTN1, VCAM-1, COL3A1, GSN, FRMD6, PLK2). Genes with reduced expression inlcude (KIF14, TACC3, ESPL1, CDC45, TTK, CDC20, CDK1, FBXO5, NEK2-NIMA, CCNE2). For the results obtained by microarray expressions, quantitative validation by RT-qPCR was performed.

Conclusions: The results indicated expression profile of genes, which can be considered as new molecular markers of cellular processes involved in signaling, cell structure organization. The expression profile of selected genes brings new insight into regulation of physiological processes in porcine follicular granulosa cells during primary in vitro culture.

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来源期刊
Cell Division
Cell Division CELL BIOLOGY-
CiteScore
3.70
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Cell Division is an open access, peer-reviewed journal that encompasses all the molecular aspects of cell cycle control and cancer, cell growth, proliferation, survival, differentiation, signalling, gene transcription, protein synthesis, genome integrity, chromosome stability, centrosome duplication, DNA damage and DNA repair. Cell Division provides an online forum for the cell-cycle community that aims to publish articles on all exciting aspects of cell-cycle research and to bridge the gap between models of cell cycle regulation, development, and cancer biology. This forum is driven by specialized and timely research articles, reviews and commentaries focused on this fast moving field, providing an invaluable tool for cell-cycle biologists. Cell Division publishes articles in areas which includes, but not limited to: DNA replication, cell fate decisions, cell cycle & development Cell proliferation, mitosis, spindle assembly checkpoint, ubiquitin mediated degradation DNA damage & repair Apoptosis & cell death
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